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Daniel Bakholdin

from Newbury Park, CA
Age ~55

Daniel Bakholdin Phones & Addresses

  • 459 Blackhawk Dr, Newbury Park, CA 91320 (661) 714-1171
  • Thousand Oaks, CA
  • 18920 Felbridge St, Canyon Country, CA 91351 (661) 251-0454
  • Valencia, CA
  • Chatsworth, CA
  • Van Nuys, CA
  • 24520 Town Center Dr APT 920, Valencia, CA 91355

Work

Company: Advanced turbine designs Sep 2014 Position: Consultant (contract)

Education

School / High School: Cal Poly State University Sep 1993 Specialities: Bachelor of Science in Mechanical Engineering

Public records

Vehicle Records

Daniel Bakholdin

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Address:
3892 Rodene St, Newbury Park, CA 91320
VIN:
3GSDL43N98S581899
Make:
SATURN
Model:
VUE
Year:
2008

Resumes

Resumes

Daniel Bakholdin Photo 1

Power And Energy Consultant

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Location:
459 Blackhawk Dr, Newbury Park, CA 91320
Industry:
Executive Office
Work:
Amber Kinetics, Inc. Jan 2016 - Jan 2018
Chief Technology Officer

Hyperloop Transportation Technologies, Inc. Mar 2015 - Mar 2016
Hypermaster, Levitation and Propulsion

Rotonix Usa Aug 2012 - Sep 2014
Chief Operating Officer

Bakholdin Energy Advisors Aug 2012 - Sep 2014
Power and Energy Consultant

Energy Cache Mar 2011 - Jul 2012
Vice President Engineering
Education:
California Polytechnic State University - San Luis Obispo 1987 - 1993
Bachelors, Bachelor of Science, Mechanical Engineering
Skills:
Engineering Management
Engineering
Product Development
Manufacturing
Mechanical Engineering
Energy
Start Ups
Alternative Energy
Testing
Program Management
Lean Manufacturing
Renewable Energy
Design For Manufacturing
Continuous Improvement
Process Engineering
Electronics
Cross Functional Team Leadership
New Business Development
R&D
Manufacturing Engineering
Solar Energy
Process Improvement
Cleantech
Product Design
Composites
Systems Engineering
Operations Management
Fmea
Aerospace
Iso
Root Cause Analysis
Electric Vehicles
Quality System
Supply Chain
Value Stream Mapping
Quality Management
Design of Experiments
Medical Devices
Turbines
Gas Turbines
Turbomachinery
Supply Chain Management
Quality Assurance
Supplier Quality
Kaizen
Manufacturing Operations Management
Process Simulation
5S
Research and Development
Failure Analysis
Interests:
Off Road
Scuba
Sportfishing
Prospecting
Ultra Running
Daniel Bakholdin Photo 2

Daniel Bakholdin

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Daniel Bakholdin Photo 3

Daniel Bakholdin

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Location:
United States
Daniel Bakholdin Photo 4

Daniel Bakholdin

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Daniel Bakholdin Photo 5

Daniel Bakholdin Newbury Park, CA

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Work:
Advanced Turbine Designs

Sep 2014 to 2000
Consultant (Contract)

Rotonix USA, Inc

Aug 2012 to Sep 2014
Chief Operating Officer

Energy Cache, Inc

Mar 2011 to Jul 2012
VP of Engineering

Advanced Turbine Designs Inc

Nov 2008 to Mar 2011
Chief Operating Officer

Pentadyne Power Corporation
Chatsworth, CA
Jul 2001 to Nov 2008
Co-founder

Capstone Turbine Corporation
Chatsworth, CA
Dec 1997 to Jun 2001
Manager, Hybrid Vehicle Projects

Rosen Motors LP
Woodland Hills, CA
Sep 1993 to Dec 1997
Manager Mechanical Engineering and Test Operations

Education:
Cal Poly State University
Sep 1993
Bachelor of Science in Mechanical Engineering

Publications

Us Patents

Liquid Fuel Combustion System And Method

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US Patent:
20020083714, Jul 4, 2002
Filed:
Sep 28, 2001
Appl. No.:
09/967818
Inventors:
Daniel Bakholdin - Canyon Country CA, US
International Classification:
F02C007/224
US Classification:
060/776000, 060/736000
Abstract:
In a liquid fuel turbine engine, the liquid fuel is vaporized prior to being mixed with air and injected into the combustion chamber to be combusted therein. The heat for vaporizing the fuel may be provided by the turbine engine and may be drawn from the turbine exhaust or may be electrically generated, where electrical power may be supplied by a generator coupled to the turbine.

Turbine Power Unit For Hybrid Electric Vehicle Applications

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US Patent:
20020157881, Oct 31, 2002
Filed:
Nov 13, 2001
Appl. No.:
09/991023
Inventors:
Daniel Bakholdin - Canyon Country CA, US
Everett Geis - Orange CA, US
Joel Wacknov - Thousand Oaks CA, US
Mark Gilbreth - Simi Valley CA, US
International Classification:
B60K006/00
US Classification:
180/065200
Abstract:
A power generation system for a hybrid electric vehicle is disclosed. The system includes a fuel source, a turbogenerator coupled to the fuel source, and a power controller. The power controller is electrically coupled to the turbogenerator, and includes first and second power converters. The first power converter converts AC power from the turbogenerator to DC power on a DC bus, and the second power converter converts the DC power on the DC bus to an operating DC power on output lines. The power controller regulates the fuel to the turbogenerator, independent of DC voltage on the DC bus. The system further includes an electric motor, a drive control unit coupled between the output lines and the electric motor, and a traction battery. The traction battery is coupled across the output lines, and provides an additional source of current, upon demand, to the electric motor.

Flywheel Stability Sleeve

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US Patent:
20080168858, Jul 17, 2008
Filed:
Jan 11, 2008
Appl. No.:
12/013180
Inventors:
Daniel Bakholdin - Canyon Country CA, US
Daryl Kobayashi - Pasadena CA, US
International Classification:
H02K 7/02
US Classification:
7457211
Abstract:
A flywheel rotating assembly has a flywheel mass that receives a sleeve that receives peripheral portions of a hub that is mounted on a shaft.

Flywheel Rotor With Conical Hub And Methods Of Manufacture Therefor

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US Patent:
56282320, May 13, 1997
Filed:
May 13, 1994
Appl. No.:
8/242647
Inventors:
Daniel Bakholdin - Van Nuys CA
Robert W. Bosley - Cerritos CA
Harold A. Rosen - Santa Monica CA
William Grayer - Encino CA
International Classification:
G05G 100
US Classification:
74572
Abstract:
A flywheel rotor used in a flywheel energy storage system providing a high energy storage capacity while providing an ample volume for a high power motor-generator within its envelope includes an outer, primarily cylindrical body having conically tapered end sections, a conical hub section attached to the outer body, and a relatively short inner cylinder, which cylinder connects shaft to the inner portion of the conical hub section. In an exemplary case, the individual components are predominantly constructed of filament wound fiber composites while allowing material choices to be driven by both cost and performance. According to one aspect of the rotor, the inner portion of the inner cylinder can be a slotted aluminum cylinder.

Flywheel Energy Storage System With Integral Molecular Pump

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US Patent:
54624029, Oct 31, 1995
Filed:
Feb 22, 1994
Appl. No.:
8/199897
Inventors:
Daniel Bakholdin - Van Nuys CA
Robert W. Bosley - Cerritos CA
Chris C. Pearson - Woodside CA
Assignee:
Rosen Motors, L.P. - Woodland Hills CA
International Classification:
F01D 136
US Classification:
415 90
Abstract:
A flywheel assembly used for mobile energy storage incorporates a molecular pump and an internal chamber containing molecular sieves. The molecular pump shares the shaft, bearings, and motor of the flywheel rotor, and maintains the high vacuum desired in the vicinity of the flywheel rotor. The gases which evolve from the rotor during its operational life are pumped into the chamber containing the molecular sieves where they are adsorbed.

Flywheel Rotor With Conical Hub And Methods Of Manufacture Therefor

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US Patent:
55665888, Oct 22, 1996
Filed:
Jan 14, 1994
Appl. No.:
8/181038
Inventors:
Daniel Bakholdin - Van Nuys CA
Robert W. Bosley - Cerritos CA
Harold A. Rosen - Santa Monica CA
International Classification:
H05K 504
H05K 702
US Classification:
74572
Abstract:
A flywheel rotor used in a flywheel energy storage system providing a high energy storage capacity while providing an ample volume for a high power motor-generator within its envelope includes an outer, primarily cylindrical body having conically tapered end sections, a conical hub section attached to the outer body, and a relatively short inner cylinder, which cylinder connects shaft to the inner portion of the conical hub section. In an exemplary case, the individual components are predominantly constructed of filament wound fiber composites while allowing material choices to be driven by both cost and performance. According to one aspect of the rotor, the inner portion of the inner cylinder can be a slotted aluminum cylinder.

Energy Storage And Power Output Flywheel System

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US Patent:
20190346013, Nov 14, 2019
Filed:
May 8, 2019
Appl. No.:
16/407089
Inventors:
Daniel Bakholdin - Newbury Park CA, US
Brij Bhargava - Santa Barbara CA, US
International Classification:
F16F 15/315
F03G 3/08
H02K 7/02
H02K 7/08
H02K 7/09
H02K 21/20
F16C 32/04
Abstract:
An improved flywheel system for storing energy and providing the stored energy includes a rotor on a centrally located shaft. The shaft is positioned through support bearings. A magnetic off-loader provides a magnetic force to move the shaft axially in regard to the bearings. A feedback control system, provided to reduce bearing loads on the bearing, comprises a sensor mounted in a bearing housing positioned to measure the distance of a gap between a top end of the shaft and a lower surface of the sensor. In response to changes in the distance the sensor sends an electrical signal to a controller which in turn provides variable electric current to the magnetic off-loader which then provides a magnetic lifting force to the rotor on the shaft to minimize bearing load.

Emergency Braking Of A Flywheel

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US Patent:
20190011001, Jan 10, 2019
Filed:
Jul 5, 2018
Appl. No.:
16/027666
Inventors:
- Union City CA, US
Daniel Bakholdin - Newbury Park CA, US
Matthew K. Senesky - Mountain View CA, US
Mark J. Holloway - Mountain View CA, US
Peter Thomas Tennessen - Oakland CA, US
Roger Nelson Hitchcock - San Leandro CA, US
International Classification:
F16D 57/00
F16D 66/00
F16D 65/14
H02K 7/02
Abstract:
A flywheel device includes an enclosure that surrounds an interior chamber that includes a rotor, which during normal operation is maintained in a vacuum state and spinning, the enclosure includes a first opening, and a valve that attaches to the enclosure, configured to enable, when actuated, ambient air to flow from the exterior of the enclosure into the chamber through the first opening, thus allowing the internal air pressure to rapidly approach ambient air pressure and thereby increase the air drag which acts as a brake on the spinning rotor.
Daniel Bakholdin from Newbury Park, CA, age ~55 Get Report